Reproducible pattern and form generation during embryogenesis is poorly understood. Intestinal organoid morphogenesis involves a number of mechanochemical regulators such as cell-type-specific cytoskeletal forces and osmotically driven lumen volume changes. It is unclear how these forces are coordinated in time and space to ensure robust morphogenesis. Here we show how mechanosensitive feedback on cytoskeletal tension gives rise to morphological bistability in a minimal model of organoid morphogenesis. In the model, lumen volume changes can impact the epithelial shape via both direct mechanical and indirect mechanosensitive mechanisms. We find that both bulged and budded crypt states are possible and dependent on the history of volume changes. We test key modelling assumptions via biophysical and pharmacological experiments to demonstrate how bistability can explain experimental observations, such as the importance of the timing of lumen shrinkage and robustness of the final morphogenetic state to mechanical perturbations. This suggests that bistability arising from feedback between cellular tensions and fluid pressure could be a general mechanism that coordinates multicellular shape changes in developing systems.
Mechanochemical bistability of intestinal organoids enables robust morphogenesis.
肠道类器官的机械化学双稳态使其能够实现稳健的形态发生
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作者:Xue Shi-Lei, Yang Qiutan, Liberali Prisca, Hannezo Edouard
| 期刊: | Nature Physics | 影响因子: | 18.400 |
| 时间: | 2025 | 起止号: | 2025;21(4):608-617 |
| doi: | 10.1038/s41567-025-02792-1 | ||
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